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SIMULATION OF SHEAR SPINNING PROCESS USING FINITE ELEMENT METHOD

机译:用有限元法模拟剪切纺纱工艺

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Spinning process for the medium- and small-lot production of axisymmetric components has many advantages, such as smaller deformation force, simpler tool-and-die design, and lower investment in equipment, over conventional forming processes. This paper presents a 3-D elastoplastic finite element (FE) model for the simulation of the shear spinning process, in order to study deformation behaviour and design proper process parameters for the spinning process. The proposed model has the following characteristics: i) a shell element is used to mesh the contact pairs between the workpiece (a metal blank) and the tool sets (a pressing roller and a mandrel); ii) the offset thickness of the shell element is considered during contact treatment; iii) the movement of the roller and the fixing of the central blank and mandrel are treated as the boundary condition; iv) relative movement between the roller and the blank is treated as a spiral feeding process. FEM simulations for shear spinning with aluminum have been implemented, using a dynamic explicit scheme, on ANSYS/LS-DYNA software. Spinning force, thickness distribution and stress distribution have been studied under various roller feeds and inclined angles of mandrel. The simulation results have provided good confirmation with the experiments.
机译:轴对称组件的中型和小批量生产的纺纱工艺具有许多优点,如较小的变形力,更简单的工具和模具设计,以及常规成型过程的较低的设备投资。本文介绍了一种用于模拟剪切纺纱工艺的3-D弹性塑料有限元(FE)模型,以研究纺纱工艺的变形行为和设计适当的工艺参数。所提出的模型具有以下特征:i)壳元件用于在工件(金属坯料)和工具组(压辊和心轴)之间啮合触点对; ii)在接触处理期间考虑壳元件的偏移厚度; iii)辊的运动和中央坯料和心轴的定影被视为边界条件; iv)辊和坯料之间的相对运动被视为螺旋馈送过程。使用动态显式方案在ANSYS / LS-DYNA软件上实现了用铝的剪切纺丝的FEM模拟。在各种辊子供给和心轴的倾斜角度下研究了纺力,厚度分布和应力分布。仿真结果提供了与实验的良好确认。

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